Wave Scattering from Non-Gaussian Rough Surfaces at Terahertz Frequencies

Mai Alissa, F. Sheikh, A. A. Abbas, T. Kaiser
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引用次数: 2

Abstract

Concerning the facile solution to the problem of electromagnetic waves’ scattering by a random rough surface, the surface distribution is generally assumed to be Gaussian. In this work, the scattering by non-Gaussian rough surfaces is investigated analytically and by simulation at terahertz (THz) frequencies. We found that for a slightly rough surface, a change in the distribution plays no major role in the scattering behavior at frequency of interest. However, for a very rough surface, with standard height deviations in the order of wavelength, the scattering pattern was distinctly affected thus changing the distribution when all other scattering factors are constant. The simulation results agree well with the analytical model, and prove that a normally distributed surface model may exhibit as an overly general surface to all random rough surfaces at THz frequencies.
太赫兹下非高斯粗糙表面的波散射
为了便于求解随机粗糙表面的电磁波散射问题,一般假定表面分布为高斯分布。在这项工作中,非高斯粗糙表面在太赫兹(THz)频率下的散射进行了分析和模拟研究。我们发现,对于稍微粗糙的表面,分布的变化对感兴趣频率的散射行为没有主要作用。然而,对于非常粗糙的表面,在波长量级的标准高度偏差下,当其他散射因子不变时,散射模式受到明显影响,从而改变了分布。仿真结果与解析模型吻合较好,证明了正态分布表面模型在太赫兹频率下对所有随机粗糙表面可能表现为过于一般化的表面。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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